Feasibility Analysis of Using Electronic Vehicles at Grab Indonesia with the IRR Method

Penulis

  • Muhammad Alif Furqan Pertamina University, Indonesia
  • Aulia Idharizqi Widayani Sahbandar Pertamina University, Indonesia
  • Barandika Barandika Pertamina University, Indonesia
  • Yizri Ievana Febrianty Rumalutur Pertamina University, Indonesia
  • Rasyid Abid Pertamina University, Indonesia
  • Fazar Sutisna Pertamina University, Indonesia
  • Yelita Anggiane Iskandar Pertamina University, Indonesia http://orcid.org/0000-0001-6941-5747
  • Resista Vikaliana Pertamina University, Indonesia

DOI:

https://doi.org/10.22441/MBCIE.2023.008

Kata Kunci:

Electric Vehicles, Transportation, IRR, Carbon Emission, Feasibility Analysis

Abstrak

Indonesia is a country with the fourth largest population in the world, reaching 275.77 million people in 2022. This has caused the need for transportation to increase, thereby creating new business opportunities for public transportation companies, including online motorcycle taxi companies such as Grab which provide service gates - to-door and order food delivery. However, the increase in transportation needs also causes an increase in fuel consumption, one of the factors causing air pollution. This study aims to calculate and determine the feasibility of using electric vehicles by Grab drivers to transport passengers, goods, or food while calculating the carbon emissions created as a result of these various activities. The feasibility analysis is based on the Internal Rate of Return (IRR) of each type of transport vehicle used, using the Sum of Years Digits (SOYD) method, which takes into account depreciation, fuel use, and the carbon emissions produced. The results of the study show that the use of electric vehicles is a viable investment in the long term, both technically and financially.

Biografi Penulis

Muhammad Alif Furqan, Pertamina University

Logistics Engineering Department

Aulia Idharizqi Widayani Sahbandar, Pertamina University

Logistics Engineering Department

Barandika Barandika, Pertamina University

Logistics Engineering Department

Yizri Ievana Febrianty Rumalutur, Pertamina University

Logistics Engineering Department

Rasyid Abid, Pertamina University

Logistics Engineering Department

Fazar Sutisna, Pertamina University

Logistics Engineering Department

Yelita Anggiane Iskandar, Pertamina University

Logistics Engineering Department

Resista Vikaliana, Pertamina University

Logistics Engineering Department

Referensi

Abas, N., Kalair, A., & Khan, N. (2015). Review of Fossil Fuels and Future Energy Technologies. Futures, 69(May 2015), 31–49.

Annur, C. M. (2022, November 1). Indonesia Masuk 5 Besar Jumlah Penduduk Terbanyak di G20. Diambil kembali dari Databoks: https://databoks.katadata.co.id/datapublish/2022/11/01/indonesia-masuk-5-besar-jumlah-penduduk-terbanyak-di-g20#

Asri, L. N., Sari, K. E., & Meidiana, C. (2022). Emisi CO Kendaraan Bermotor pada Ruas Jalan dengan Tingkat Pelayanan Rendah di Kota Malang. 2, 36.

Badan Pusat Statistik. (2020). Perkembangan Jumlah Kendaraan Bermotor Menurut Jenis (Unit), 2018-2020. Transportasi, hal. 1.

Fahrurrozi, & dkk. (2020, Januari). Analisis Layanan Ojek Online PT. Grab Indonesia Wilayah Surabaya dalam Perspektif Bisnis Islam. Jurnal Ekonomi & Ekonomi Syariah, Vol.3 No.1.

Feng, X. (2021). Economic and Ecological Optimization of The London Urban Logistics System Considering Infection Risk during Pandemic Periods. International Journal of Supply and Operations Management, 114-133.

Ibrahim, M. A. (2022). Berapa Populasi Kendaraan Listrik di Indonesia Saat Ini? Jakarta: CNN Indonesia.

Kementerian ESDM. (2020). Dashboard Percepatan Program KBLBB (Kendaraan Bermotor Listrik Berbasis Baterai). Dipetik Januari 3, 2022, dari https://www.esdm.go.id/kblbb/

Sari, J. P. (2022). Jumlah Kendaraan Bermotor di Indonesia Tembus 150,7 Juta Unit. Jakarta: Kompas.

Supit, R. M., & dkk. (2019, Januari). Model Pemilihan Moda Transportasi Online di Kota Manado. Jurnal Sipil Statik, Vol.7 No.1, 35-48.

Syahrul, M., & arisah, n. (2020). Persepsi Pengguna Jasa Transportasi Online Grab Ditinjau dari. Journal of Education and Entrepreneur Studies, vol 1(2), 88-100.

Woo, J., Choi, H., & Ahn, J. ( 2017). Well-to-Wheel Analysis of Greenhouse Gas Emissions for Electric Vehicles Based on Electricity Generation Mix: A Global Perspective. Transportation Research Part D: Transport and Environment, 51, 340–350.

Wulan, S., & Astuti, T. M. (2023). Analisis Kelayakan Bisnis Rencana Pendirian usaha Butik Busana Lady Center di Pringsewu. JUrnal FEB Univesitas Bandar Lampung, 1-20.

Diterbitkan

2023-07-19

Cara Mengutip

[1]
M. A. Furqan, “Feasibility Analysis of Using Electronic Vehicles at Grab Indonesia with the IRR Method”, MBCIE, vol. 5, no. 1, hlm. 62–72, Jul 2023.